We investigated the means and timing by which mutations become fixed in the human colonic epithelium by visualizing somatic clones and mathematical inference. Fixation requires two sequential steps. First, one of approximately seven active stem cells residing within each colonic crypt has to be mutated. Second, the mutated stem cell has to replace neighbors to populate the entire crypt in a process that takes several years. Subsequent clonal expansion due to crypt fission is infrequent for neutral mutations (around 0.7% of all crypts undergo fission in a single year). Pro-oncogenic mutations subvert both stem cell replacement to accelerate fixation and clonal expansion by crypt fission to achieve high mutant allele frequencies with age. The...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...
The surface epithelium lining the intestinal tract renews itself rapidly by a coordinated programme ...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...
We investigated the means and timing by which mutations become fixed in the human colonic epithelium...
We investigated the means and timing by which mutations become fixed in the human colonic epithelium...
Background & Aims Colorectal cancer (CRC) is thought to arise when the cumulative mutational bur...
All cancers were once normal cells. They became cancerous through the chance acquisition of particul...
<div><p>Epithelial cells in the colon are arranged in cylindrical structures called crypts in which ...
SummaryHuman intestinal stem cell and crypt dynamics remain poorly characterized because transgenic ...
The mechanisms of how DNA mutations are fixed within the human gastrointestinal tract and how they s...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
Background & Aims: Colorectal cancer (CRC) is thought to arise when the cumulative mutational burden...
OBJECTIVE: The crypt population in the human intestine is dynamic: crypts can divide to produce two ...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...
The surface epithelium lining the intestinal tract renews itself rapidly by a coordinated programme ...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...
We investigated the means and timing by which mutations become fixed in the human colonic epithelium...
We investigated the means and timing by which mutations become fixed in the human colonic epithelium...
Background & Aims Colorectal cancer (CRC) is thought to arise when the cumulative mutational bur...
All cancers were once normal cells. They became cancerous through the chance acquisition of particul...
<div><p>Epithelial cells in the colon are arranged in cylindrical structures called crypts in which ...
SummaryHuman intestinal stem cell and crypt dynamics remain poorly characterized because transgenic ...
The mechanisms of how DNA mutations are fixed within the human gastrointestinal tract and how they s...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
Background & Aims: Colorectal cancer (CRC) is thought to arise when the cumulative mutational burden...
OBJECTIVE: The crypt population in the human intestine is dynamic: crypts can divide to produce two ...
Human intestinal stem cell and crypt dynamics remain poorly characterized because transgenic lineage...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...
The surface epithelium lining the intestinal tract renews itself rapidly by a coordinated programme ...
The understanding of the fixation of mutations within human tissues and their subsequent clonal expa...